首页> 外文会议>Micro Electro Mechanical Systems (MEMS), 2012 IEEE 25th International Conference on >A nano-optical switch driven by optical force using a laterally coupled double-ring resonator
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A nano-optical switch driven by optical force using a laterally coupled double-ring resonator

机译:使用横向耦合双环谐振器由光力驱动的纳米光学开关

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This paper reports a nano-optical switch driven by optical force in a laterally coupled double-ring resonator. The nano-switch consists of two bus waveguides and a double-ring resonator, with one ring suspended. The circulating power in the double-ring resonator generates strong optical force, leading to deformation of the suspended ring. As a result, a resonance shift at the output leads to the switching operation. In experiment, a switching contrast of more than 25 dB is achieved, with a switching time of nano-seconds. Compared with other reported free-carrier effect and/or silicon-based high speed switches, the proposed switch allows switching operation at low pumping power levels in planar nano-scaled structures.
机译:本文报道了一种由横向耦合双环谐振器中的光力驱动的纳米光学开关。纳米开关由两个总线波导和一个双环谐振器组成,其中一个环悬挂着。双环谐振器中的循环功率会产生很强的光学力,从而导致吊环变形。结果,输出端的共振偏移导致开关操作。在实验中,切换时间超过25 dB,切换时间为纳秒。与其他报告的自由载流子效应和/或基于硅的高速开关相比,该开关允许在平面纳米级结构中以低泵浦功率水平进行开关操作。

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